Effect of whole-body vibration training on body composition, exercise performance and biochemical responses in middle-aged mice

被引:32
|
作者
Lin, Ching-I [1 ]
Huang, Wen-Ching [2 ]
Chen, Wen-Chyuan [3 ]
Kan, Nai-Wen [2 ,4 ]
Wei, Li [5 ]
Chiu, Yen-Shuo [6 ,7 ]
Huang, Chi-Chang [6 ]
机构
[1] Kainan Univ, Dept Nutr & Hlth Sci, Taoyuan 33857, Taiwan
[2] Natl Taiwan Sport Univ, Grad Inst Athlet & Coaching Sci, Taoyuan 33301, Taiwan
[3] Chang Gung Univ Sci & Technol, Ctr Gen Educ, Taoyuan 33301, Taiwan
[4] Taipei Med Univ, Ctr Liberal Arts, Taipei 11031, Taiwan
[5] Taipei Med Univ, WanFang Hosp, Dept Neurosurg, Taipei 11696, Taiwan
[6] Natl Taiwan Sport Univ, Grad Inst Sports Sci, Tao yuan 33301, Taiwan
[7] Taipei Med Univ, Shuang Ho Hosp, Dept Orthoped Surg, New Taipei City 23561, Taiwan
来源
METABOLISM-CLINICAL AND EXPERIMENTAL | 2015年 / 64卷 / 09期
关键词
Vibration training; Exercise performance; Lactate; Ammonia; Creatine kinase; ADIPOSE-TISSUE ACTIVITY; MUSCLE STRENGTH; POSTMENOPAUSAL WOMEN; BALANCE; BONE; DENSITY; RISK;
D O I
10.1016/j.metabol.2015.05.007
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Aims. Whole-body vibration (WBV) is a well-known light-resistance exercise by automatic adaptations to rapid and repeated oscillations from a vibrating platform, which is also a simple and convenient exercise for older adults. However, the potential benefits of WBV on aging-associated changes in body composition, exercise performance, and fatigue are currently unclear. The objective of the study is to investigate the beneficial effects of WBV training on body composition, exercise performance, and physical fatigue-related and biochemical responses in middle-aged mice. Methods. In total, 24 male C57BL/6 mice aged 15 months old were randomly divided into 3 groups (n = 8 per group): sedentary control (SC), relatively low-frequency WBV (5.6 Hz, 2 mm, 0.13 g) (LV), and relatively high-frequency WBV (13 Hz, 2 mm, 0.68 g) (MV). Mice in the LV and MV groups were placed inside a vibration platform and vibrated at different frequencies and fixed amplitude (2 mm) for 15 min, 5 days/week for 4 weeks. Exercise performance, core temperature and anti-fatigue function were evaluated by forelimb grip strength and levels of serum lactate, ammonia, glucose, and creatine kinase (CK) after a 15-mm swimming exercise, as were changes in body composition and biochemical variables at the end of the experiment. Results. Relative muscle and brown adipose tissue weight (%) was significantly higher for the MV than SC mice, but relative liver weight (%) was lower. On trend analysis, WBV increased grip strength, aerobic endurance and core temperature in mice. As well, serum lactate, ammonia and CK levels were dose-dependently decreased with vibration frequency after the swimming test. Fasting serum levels of albumin and total protein were increased and serum levels of alkaline phosphatase and creatinine decreased dose-dependently with vibration frequency. Moreover, WBV training improved the age-related abnormal morphology of skeletal muscle, liver and kidney tissues. Therefore, it could improve exercise performance and ameliorate fatigue and prevent senescence-associated biochemical and pathological alterations in middle-aged mice. Conclusions. WBV training may be an effective intervention for health promotion in the aging population. The detailed molecular mechanism of how WBV training regulates antiaging activity warrants further functional studies. (C) 2015 Elsevier Inc. All rights reserved.
引用
收藏
页码:1146 / 1156
页数:11
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